Chen Cuihua, Yu Gen, Guo Zhenyu, Yang Qihao, Su Wenfeng, Xie Qingfen, Yang Guandong, Ren Yifei, Li He
Key Specialty of Clinical Pharmacy, The First Affiliated Hospital of Guangdong Pharmaceutical University, Guangzhou, China.
Guangdong Key Laboratory of Pharmaceutical Bioactive Substances, College of Life Sciences and Biopharmaceuticals, Guangdong Pharmaceutical University, Guangzhou, China.
Front Microbiol. 2022 Jul 7;13:922506. doi: 10.3389/fmicb.2022.922506. eCollection 2022.
Esterase, as a type of powerful catabolic enzyme for the degradation of pyrethroid pesticides (PYRs), appears promising in improving the quality of crops and the environment contaminated by pesticide residues. The purpose of this research is to provide a detailed introduction to the enzymatic properties, optimal production and immobilization conditions, and the degradation ability of Est804 for PYRs. The study on enzymatic properties indicated that Est804 was an alkaline esterase with an optimal pH of 8.0 and a broad optimal temperature in the range of 35-50°C. The optimal activity of free Est804 was calculated to be 112.812 U, and the specific enzyme activity was 48.97 U/mg. The kinetic parameters of Est804 were = 0.613 mM, = 12,371 s, and = 0.095 mM/min. The results of the fermentative optimization demonstrated that the optimal conditions included 1.5% of inoculation amount, 30 mL of liquid volume, 28°C of the fermentation temperature, and 18 h of the fermentation time. The optimal medium consists of 15.87 g of yeast powder, 8.00 g of glycerol, and 9.57 g of tryptone in 1 L of liquid. The optimized enzyme activity was 1.68-fold higher than that before optimization. Immobilized Est804 exhibited the highest activity under the optimum preparation conditions, including 0.35 g of chitosan dosage, 0.4 mL of an enzyme, and 4 h at 40°C for adsorption. The degradation rates of Cypermethrin (CYP), fenpropathrin (FE), and lambda-cyhalothrin (LCT) by Est804 within 30 min were 77.35%, 84.73%, and 74.16%, respectively. The present study indicated that Est804 possesses great potential for the treatment of pesticide residues on crops and environmental remediation, conducive to the development of SGNH family esterase against pyrethroid accumulation.
酯酶作为一种降解拟除虫菊酯类农药(PYRs)的强大分解酶,在改善受农药残留污染的农作物质量和环境方面似乎很有前景。本研究的目的是详细介绍Est804的酶学性质、最佳生产和固定化条件以及对PYRs的降解能力。酶学性质研究表明,Est804是一种碱性酯酶,最适pH为8.0,在35 - 50°C范围内具有较宽的最适温度。游离Est804的最佳活性经计算为112.812 U,比酶活为48.97 U/mg。Est804的动力学参数为:Km = 0.613 mM,Vmax = 12371 s,kcat = 0.095 mM/min。发酵优化结果表明,最佳条件包括接种量1.5%、液体体积30 mL、发酵温度28°C和发酵时间18 h。最佳培养基由1 L液体中15.87 g酵母粉、8.00 g甘油和9.57 g胰蛋白胨组成。优化后的酶活性比优化前高1.68倍。固定化Est804在最佳制备条件下表现出最高活性,包括壳聚糖用量0.35 g、酶量0.4 mL以及在40°C吸附4 h。Est804在30分钟内对氯氰菊酯(CYP)、甲氰菊酯(FE)和高效氯氟氰菊酯(LCT)的降解率分别为77.35%、84.73%和74.16%。本研究表明,Est804在处理农作物上的农药残留和环境修复方面具有巨大潜力,有利于开发针对拟除虫菊酯积累的SGNH家族酯酶。